Phtheirospermum japonicum

Details Top

Internal ID UUID64404edce8ddb538293653
Scientific name Phtheirospermum japonicum
Authority (Thunb.) Kanitz
First published in Exp. Asiae Orient. : 12 (1878)

Ethnobotanical Use Top

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General Uses Top

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Common products:
- No food, beverage, timber, fiber, colorant, resin, gum, or fragrance products are documented for Phtheirospermum japonicum.

Industrial and craft applications:
- No commercial industrial or craft uses are reported.

Food and beverages (non-medicinal):
- No culinary uses are documented.

Colorants and tanning:
- No dye or tannin uses are documented.

Wood and fiber:
- No wood, pulp, or fiber applications are documented.

Fragrance and cosmetics:
- No fragrance or cosmetic uses are reported.

Properties relevant to use:
- No property data relevant to commercial or craft applications are reported.

Standards and regulation:
- No standards or regulatory frameworks specific to this taxon are documented.

Sustainability and sourcing:
- No sustainability or sourcing considerations are reported.

Scientific/model use:
- Phtheirospermum japonicum is used as a model organism in plant biology research, particularly in studies of plant parasitism and haustorium development (e.g., developmental genetics of Orobanchaceae). A reference genome and transcriptomic resources support community work on parasitic plant biology. No claims of commercial or industrial relevance are implied.

Synonyms Top

Scientific name Authority First published in
Phtheirospermum esquirolii Bonati Monde Pl. 9: 14 (1907)
Centrantheropsis rigida Bonati Bull. Soc. Bot. Genève , sér. 2, 5: 314 (1913 publ. 1914)
Gerardia japonica Thunb. Syst. Veg. ed. 14 : 553 (1784)
Phtheirospermum chinense Bunge Index Seminum [St.Petersburg (Petropolitanus)] i. 35.
Phtheirospermum japonicum f. albiflorum (Honda) H.Hara Enum. Spermatophytarum Japon. 1: 270 (1948)
Phtheirospermum japonicum var. albiflorum Honda

Common names Top

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Language Common/alternative name
Japanese コシオガマ
Chinese 日本松蒿
Chinese 松蒿

Subspecies (abbr. subsp./ssp.) Top

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Varieties (abbr. var.) Top

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Subvarieties (abbr. subvar.) Top

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Forms (abbr. f.) Top

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Germination/Propagation Top

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Distribution (via POWO/KEW) Top

Legend for the distribution data:
- Doubtful data
- Extinct
- Introduced
- Native
  • Asia-temperate
    • China
      • China North-central
      • China South-central
      • China Southeast
      • Hainan
      • Inner Mongolia
      • Manchuria
      • Qinghai
      • Tibet
    • Eastern Asia
      • Japan
      • Korea
    • Russian Far East
      • Amur
      • Khabarovsk
      • Primorye

Links to other databases Top

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Database ID/link to page
World Flora Online wfo-0001140142
Tropicos 29208857
KEW urn:lsid:ipni.org:names:808371-1
The Plant List tro-29208857
Open Tree Of Life 981070
NCBI Taxonomy 374723
IPNI 808371-1
iNaturalist 516768
GBIF 3727799
EPPO QTHJA
EOL 2894964

Genomes (via NCBI) Top

Below is displayed the reference genome only!
If you wish to browse all genomes for this plant click here.
Accession Assembly
Name Level Submitter Released Coverage Size
GCA_014905375.1 Pjver1 Scaffold RINEN center for sustainable resource science 2020-10-01 83 1.14 Gb

Scientific Literature Top

Below are displayed the latest 15 articles published in PMC (PubMed Central®) and other sources (DOI number only)!
If you wish to see all the related articles click here.
Title Authors Publication Released IDs
Comparative secretome analysis of Striga and Cuscuta species identifies candidate virulence factors for two evolutionarily independent parasitic plant lineages Bradley JM, Butlin RK, Scholes JD BMC Plant Biol 06-Apr-2024
PMCID:PMC10998327
doi:10.1186/s12870-024-04935-7
PMID:38582844
Integrated Transcriptome and Proteome Analysis Reveals That Cell Wall Activity Affects Phelipanche aegyptiaca Parasitism Chen M, Zhang L, Yao Z, Cao X, Ma Q, Chen S, Zhang X, Zhao S Plants (Basel) 18-Mar-2024
PMCID:PMC10974318
doi:10.3390/plants13060869
PMID:38592861
An improved method for the highly specific detection of transcription start sites Seki M, Kuze Y, Zhang X, Kurotani KI, Notaguchi M, Nishio H, Kudoh H, Suzaki T, Yoshida S, Sugano S, Matsushita T, Suzuki Y Nucleic Acids Res 22-Nov-2023
PMCID:PMC10810191
doi:10.1093/nar/gkad1116
PMID:37994784
A simple and efficient protocol for generating transgenic hairy roots using Agrobacterium rhizogenes Ferguson S, Abel NB, Reid D, Madsen LH, Luu TB, Andersen KR, Stougaard J, Radutoiu S PLoS One 01-Nov-2023
PMCID:PMC10619795
doi:10.1371/journal.pone.0291680
PMID:37910566
Focus on cell walls Geitmann A, Bacic A( Plant Physiol 11-Oct-2023
PMCID:PMC10756750
doi:10.1093/plphys/kiad537
PMID:37819051
Overexpression of ApHIPP26 from the Hyperaccumulator Arabis paniculata Confers Enhanced Cadmium Tolerance and Accumulation to Arabidopsis thaliana Zhou L, Ye L, Pang B, Hou Y, Yu J, Du X, Gu L, Wang H, Zhu B Int J Mol Sci 10-Oct-2023
PMCID:PMC10606507
doi:10.3390/ijms242015052
PMID:37894733
Melting the wall: plant parasitism entails pectin modification Dixit S, Upadhyay SK Plant Signal Behav 29-Aug-2023
PMCID:PMC10467513
doi:10.1080/15592324.2023.2252219
PMID:37642396
A roadmap of haustorium morphogenesis in parasitic plants Kirschner GK, Xiao TT, Jamil M, Al-Babili S, Lube V, Blilou I J Exp Bot 24-Jul-2023
PMCID:PMC10752351
doi:10.1093/jxb/erad284
PMID:37486862
Pectin modifications promote haustoria development in the parasitic plant Phtheirospermum japonicum Leso M, Kokla A, Feng M, Melnyk CW Plant Physiol 13-Jun-2023
PMCID:PMC10762509
doi:10.1093/plphys/kiad343
PMID:37311199
STAY-GREEN Accelerates Chlorophyll Degradation in Magnolia sinostellata under the Condition of Light Deficiency Ren M, Ma J, Lu D, Wu C, Zhu S, Chen X, Wu Y, Shen Y Int J Mol Sci 09-May-2023
PMCID:PMC10218395
doi:10.3390/ijms24108510
PMID:37239857
Combined Metabolome and Transcriptome Analysis Highlights the Host’s Influence on Cistanche deserticola Metabolite Accumulation Feng R, Wei H, Xu R, Liu S, Wei J, Guo K, Qiao H, Xu C Int J Mol Sci 27-Apr-2023
PMCID:PMC10178529
doi:10.3390/ijms24097968
PMID:37175675
A Divergent Clade KAI2 Protein in the Root Parasitic Plant Orobanche minor Is a Highly Sensitive Strigolactone Receptor and Is Involved in the Perception of Sesquiterpene Lactones Takei S, Uchiyama Y, Bürger M, Suzuki T, Okabe S, Chory J, Seto Y Plant Cell Physiol 01-Apr-2023
PMCID:PMC10504577
doi:10.1093/pcp/pcad026
PMID:37061839
Transcriptome analysis reveals defense-related genes and pathways during dodder (Cuscuta australis) parasitism on white clover (Trifolium repens) Zhou L, Zawaira A, Lu Q, Yang B, Li J Front Genet 16-Mar-2023
PMCID:PMC10060986
doi:10.3389/fgene.2023.1106936
PMID:37007956
Genomic and Epigenomic Mechanisms of the Interaction between Parasitic and Host Plants Ashapkin VV, Kutueva LI, Aleksandrushkina NI, Vanyushin BF, Teofanova DR, Zagorchev LI Int J Mol Sci 31-Jan-2023
PMCID:PMC9917227
doi:10.3390/ijms24032647
PMID:36768970
A chromosome-level genome assembly of Plantago ovata Herliana L, Schwerdt JG, Neumann TR, Severn-Ellis A, Phan JL, Cowley JM, Shirley NJ, Tucker MR, Bianco-Miotto T, Batley J, Watson-Haigh NS, Burton RA Sci Rep 27-Jan-2023
PMCID:PMC9883528
doi:10.1038/s41598-022-25078-5
PMID:36707685

Phytochemical Profile Top

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Below are displayed the proven (via scientific papers) natural compounds!
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Name PubChem ID Canonical SMILES MW Found in Proof
> Lipids and lipid-like molecules / Prenol lipids / Terpene glycosides / Iridoid O-glycosides
4a-hydroxy-7-methyl-1-[3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy-5,6,7,7a-tetrahydro-1H-cyclopenta[c]pyran-4-carbaldehyde 13890717 Click to see 360.36 unknown https://doi.org/10.1021/NP50055A033
Aucubin 91458 Click to see C1=COC(C2C1C(C=C2CO)O)OC3C(C(C(C(O3)CO)O)O)O 346.33 unknown https://doi.org/10.1021/NP50055A033
Geniposidic Acid 443354 Click to see C1C=C(C2C1C(=COC2OC3C(C(C(C(O3)CO)O)O)O)C(=O)O)CO 374.34 unknown https://doi.org/10.1021/NP50055A033
Plantarenaloside 155882 Click to see CC1CCC2(C1C(OC=C2C=O)OC3C(C(C(C(O3)CO)O)O)O)O 360.36 unknown https://doi.org/10.1021/NP50055A033
> Organic oxygen compounds / Organooxygen compounds / Carbohydrates and carbohydrate conjugates / Oligosaccharides
Forsythoside B 23928102 Click to see CC1C(C(C(C(O1)OC2C(C(OC(C2OC(=O)C=CC3=CC(=C(C=C3)O)O)COC4C(C(CO4)(CO)O)O)OCCC5=CC(=C(C=C5)O)O)O)O)O)O 756.70 unknown https://doi.org/10.1021/NP50055A033
> Phenylpropanoids and polyketides / Cinnamic acids and derivatives / Hydroxycinnamic acids and derivatives / Coumaric acids and derivatives
[(2R,3R,4R,5R,6R)-6-[2-(3,4-dihydroxyphenyl)ethoxy]-5-hydroxy-2-(hydroxymethyl)-4-[(2S,3R,4R,5R,6S)-3,4,5-trihydroxy-6-methyloxan-2-yl]oxyoxan-3-yl] (E)-3-(3-hydroxy-4-methoxyphenyl)prop-2-enoate 6476334 Click to see CC1C(C(C(C(O1)OC2C(C(OC(C2OC(=O)C=CC3=CC(=C(C=C3)OC)O)CO)OCCC4=CC(=C(C=C4)O)O)O)O)O)O 638.60 unknown https://doi.org/10.1021/NP50055A033
[6-[2-(3,4-Dihydroxyphenyl)ethoxy]-5-hydroxy-2-(hydroxymethyl)-4-(3,4,5-trihydroxy-6-methyloxan-2-yl)oxyoxan-3-yl] 3-(4-hydroxy-3-methoxyphenyl)prop-2-enoate 74027662 Click to see 638.60 unknown https://doi.org/10.1021/NP50055A033
2-(3,4-Dihydroxyphenyl)ethyl 3-O-(6-Deoxy-alpha-L-mannopyranosyl)-4-O-((2E)-3-(3,4-dihydroxyphenyl)-2-propenoyl)-beta-D-glucopyranoside 132274946 Click to see 624.60 unknown https://doi.org/10.1021/NP50055A033
Martynoside 5319292 Click to see 652.60 unknown https://doi.org/10.1021/NP50055A033
Phtheirospermoside 6443277 Click to see 638.60 unknown https://doi.org/10.1021/NP50055A033
Verbascoside 5281800 Click to see CC1C(C(C(C(O1)OC2C(C(OC(C2OC(=O)C=CC3=CC(=C(C=C3)O)O)CO)OCCC4=CC(=C(C=C4)O)O)O)O)O)O 624.60 unknown https://doi.org/10.1021/NP50055A033

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